Krishna R. Reddy
Also known as: Reddy KR
University of Illinois Chicago, Illinois Institute of Technology
About
Dr. Krishna R. Reddy is a University Scholar, Distinguished Researcher, and Professor in the Department of Civil, Materials, and Environmental Engineering and is the Director of the Geotechnical and Geoenvironmental Engineering and Sustainable Engineering Research laboratories at the University of Illinois Chicago (UIC), USA. He received his PhD in Civil Engineering from the Illinois Institute of Technology, Chicago. Before joining UIC, he worked for three years in consulting as a Civil and Environmental Engineer. His research expertise includes environmental remediation, waste containment, beneficial use of waste and recycled materials, AI/ML/DL applications in geoenvironmental engineering, and sustainable and resilient engineering. He is the author of four major books, including two well-known textbooks (Geoenvironmental Engineering and Sustainable and Resilient Engineering, both published by Wiley). He is also the author of 334 journal papers, 44 edited books/conference proceedings, 27 book chapters, and 279 full conference papers (with an h-index of 83 with over 24,000 citations). Dr. Reddy has given 338 invited presentations in the USA and 25 other countries. Dr. Reddy is the recipient of the Fulbright US Scholar Award, ASCE Wesley W. Horner Award, ASTM Hogentogler Award, UIC Distinguished Researcher Award, University of Illinois Scholar Award, and the University of Illinois Award for Excellence in Teaching. He is a Fellow of the American Society of Civil Engineers, a registered Professional Civil Engineer, and an Envision Sustainability Professional.
Employment
-
University of Illinois Chicago Professor1993 - Present
Education
-
Illinois Institute of Technology Ph.D.1985 - 1990
Projects & Funding
Projects & funding information is unavailable.
Publications (551)
- Sustainability Assessment of Alternative Methods for Destruction of Per‐ and Polyfluoroalkyl Substances (PFAS) in Water Save
- Investigation of chitosans for water treatment: Effects of feedstock and synthesis on contaminant removal Save
- Long-Term Performance Assessment of Bioreactor Landfills under Varying Placement Conditions and Waste Characteristics Using a CoupledThermo–Hydro–Bio–Mechanical Model Save
- Field construction of novel biopolymer-amended soil-bentonite backfill cutoff wall: Evaluation of in situ stresses, hydraulic conductivity, and chemical compatibility Save
- Geopolymer Crusts from Waste Marble Powder for Sand Dune Stabilization in Arid Climates: A Multi-Performance Assessment Save
- Integrated resiliency and sustainability assessment of biogeochemical cover system to mitigate landfill gas emissions Save
- Life Cycle Assessment of Biogeochemical versus Conventional Soil Landfill Cover: Sensitivity and Uncertainty Analyses Save
- Sustainable Geotechnical, Geosynthetics, and Geoenvironmental Engineering Solutions Driven by Quantitative Assessments Save
- Applicability of Waste Marble Slurry-Desert Sand as a Crust to Mitigate Wind Erosion of Sand Dunes Save
- Data-Driven Surrogate Model-Based Optimization of Leachate Recirculation for Maximum Energy Recovery from Landfills Save